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Scalable imprinting of shape-specific polymeric nanocarriers using a release layer of switchable water solubility

机译:使用可切换水溶性的释放层可扩展地印制特定形状的聚合物纳米载体

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摘要

There is increasing interest in fabricating shape-specific polymeric nano- and microparticles for efficient delivery of drugs and imaging agents. The size and shape of these particles could significantly influence their transport properties and play an important role in in vivo biodistribution, targeting, and cellular uptake. Nanoimprint lithography methods, such as jet-and-flash imprint lithography (J-FIL), provide versatile top-down processes to fabricate shape-specific, biocompatible nanoscale hydrogels that can deliver therapeutic and diagnostic molecules in response to disease-specific cues. However, the key challenges in top-down fabrication of such nanocarriers are scalable imprinting with biological and biocompatible materials, ease of particle-surface modification using both aqueous and organic chemistry as well as simple yet biocompatible harvesting. Here we report that a biopolymer-based sacrificial release layer in combination with improved nanocarrier-material formulation can address these challenges. The sacrificial layer improves scalability and ease of imprint-surface modification due to its switchable solubility through simple ion exchange between monovalent and divalent cations. This process enables large-scale bionanoimprinting and efficient, one-step harvesting of hydrogel nanoparticles in both water- and organic-based imprint solutions.
机译:为了有效地递送药物和显像剂,制造形状特定的聚合物纳米和微粒的兴趣日益增加。这些颗粒的大小和形状可能会显着影响其运输性能,并在体内生物分布,靶向和细胞摄取中发挥重要作用。纳米压印光刻方法,例如喷射和闪光压印光刻(J-FIL),提供了多种自上而下的方法来制造形状特定的,生物相容的纳米级水凝胶,这些水凝胶可根据疾病特定的线索提供治疗和诊断分子。然而,自上而下制造此类纳米载体的关键挑战是生物和生物相容性材料的可扩展压印,使用水和有机化学方法进行的颗粒表面修饰的简便性以及简单而又生物相容的收获。在这里我们报告基于生物聚合物的牺牲释放层与改进的纳米载体材料配方相结合可以解决这些挑战。牺牲层通过单价和二价阳离子之间的简单离子交换而具有可切换的溶解度,从而提高了可缩放性并简化了压印表面改性。此过程使大规模的仿生纳米压印和水基和有机压印溶液中水凝胶纳米颗粒的高效一步收获成为可能。

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